English

Gravity Rainbow Effects on Higher Curvature Modification of R2 inflation

General Relativity and Quantum Cosmology 2024-08-05 v3

Abstract

In this work, we study several extensions of the higher curvature modification of R2R^{2} inflation in the context of gravity's rainbow. We modify the (R+R2)(R+R^{2}) model by adding an f1R3f_{1}R^3-term, an f2R4f_{2}R^4-term, and an f3R3/2f_{3}R^{3/2}-term to the original model. We calculate the inflationary observables and confront them using the latest observational bounds from Planck 2018 data. We assume the rainbow function of the form f~=1+(HM)λ\tilde{f}=1+\left(\frac{H}{M}\right)^{\lambda } with λ\lambda being a rainbow parameter and MM a mass-dimensional parameter. We demonstrate that the power spectrum of curvature perturbation relies on the dimensionless coefficient fi,i=1,2,3f_{i},\,i=1,2,3, a rainbow parameter λ\lambda and a ratio H/MH/M. Likewise, the scalar spectral index nsn_s is affected by both fif_{i} and the rainbow parameter. Moreover, the tensor-to-scalar ratio rr is solely determined by the rainbow parameter. Interestingly, by ensuring that nsn_s aligns with the Planck collaboration's findings at the 1σ1\sigma confidence level, the tensor-to-scalar ratio could reach up to r0.01r\sim 0.01, which is possibly measurable for detection in forthcoming Stage IV CMB ground experiments and is certainly feasible for future dedicated space missions.

Keywords

Cite

@article{arxiv.2405.04174,
  title  = {Gravity Rainbow Effects on Higher Curvature Modification of R2 inflation},
  author = {Jureeporn Yuennan and Phongpichit Channuie and Davood Momeni},
  journal= {arXiv preprint arXiv:2405.04174},
  year   = {2024}
}

Comments

v3: 21 pages, 4 figures. references added, texts modified, results unchanged. Version published in EPJC. arXiv admin note: text overlap with arXiv:2404.14766